KR102403280B1 - Polarizing plate, adhesive composition for polarizing plate and optical display apparatus comprising the same - Google Patents

Polarizing plate, adhesive composition for polarizing plate and optical display apparatus comprising the same Download PDF

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KR102403280B1
KR102403280B1 KR1020180168549A KR20180168549A KR102403280B1 KR 102403280 B1 KR102403280 B1 KR 102403280B1 KR 1020180168549 A KR1020180168549 A KR 1020180168549A KR 20180168549 A KR20180168549 A KR 20180168549A KR 102403280 B1 KR102403280 B1 KR 102403280B1
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polarizing plate
poly
glyoxylate
adhesive layer
weight
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KR20200079052A (en
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이태현
유미연
이승준
정우진
김일진
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삼성에스디아이 주식회사
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Priority to CN201980082799.4A priority patent/CN113196120B/en
Priority to PCT/KR2019/018172 priority patent/WO2020138853A1/en
Priority to US17/272,880 priority patent/US11822109B2/en
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    • GPHYSICS
    • G02OPTICS
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    • G02B5/30Polarising elements
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B5/00Optical elements other than lenses
    • G02B5/30Polarising elements
    • G02B5/3025Polarisers, i.e. arrangements capable of producing a definite output polarisation state from an unpolarised input state
    • G02B5/3058Polarisers, i.e. arrangements capable of producing a definite output polarisation state from an unpolarised input state comprising electrically conductive elements, e.g. wire grids, conductive particles
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B5/00Optical elements other than lenses
    • G02B5/30Polarising elements
    • G02B5/3025Polarisers, i.e. arrangements capable of producing a definite output polarisation state from an unpolarised input state
    • G02B5/3033Polarisers, i.e. arrangements capable of producing a definite output polarisation state from an unpolarised input state in the form of a thin sheet or foil, e.g. Polaroid
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    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
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    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
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    • G02OPTICS
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Abstract

편광자; 및 상기 편광자의 적어도 일면에 순차적으로 형성된 편광판용 접착층과 보호층을 포함하고, 상기 편광판용 접착층은 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)을 포함하고, 상기 편광판용 접착층은 표면 저항이 1 x 108 내지 1 x 1012(Ω/□)인 것인 편광판, 이를 위한 편광판용 접착제 조성물 및 이를 포함하는 광학표시장치가 제공된다.polarizer; and an adhesive layer and a protective layer for a polarizing plate sequentially formed on at least one surface of the polarizer, wherein the adhesive layer for the polarizing plate includes poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS), and for the polarizing plate The adhesive layer is provided with a polarizing plate having a surface resistance of 1 x 10 8 to 1 x 10 12 (Ω/□), an adhesive composition for a polarizing plate therefor, and an optical display device including the same.

Description

편광판, 이를 위한 편광판용 접착제 조성물 및 이를 포함하는 광학 표시 장치{POLARIZING PLATE, ADHESIVE COMPOSITION FOR POLARIZING PLATE AND OPTICAL DISPLAY APPARATUS COMPRISING THE SAME}Polarizing plate, adhesive composition for polarizing plate therefor, and optical display device including the same

본 발명은 편광판, 이를 위한 편광판용 접착제 조성물 및 이를 포함하는 광학 표시 장치에 관한 것이다.The present invention relates to a polarizing plate, an adhesive composition for the polarizing plate therefor, and an optical display device including the same.

액정 표시 장치는 액정 패널의 양측에 편광판이 점착제층을 통해 접합되어 있다. 또한, 액정 표시 장치의 표시 화면에 터치 센서를 탑재하는 방식이 실용화되어 있다. 터치 센서는 정전 용량 방식, 저항막 방식, 광학 방식, 초음파 방식 혹은 전자 유도 방식 등의 다양한 방식이 있지만 정전 용량 방식이 많이 채용되고 있다. 근래에는 터치 센서의 터치 센서부로서 정전 용량 센서를 내장한, 터치 센싱 기능이 있는 액정 표시 장치가 이용되고 있다.In the liquid crystal display device, polarizing plates are bonded to both sides of a liquid crystal panel through an adhesive layer. Also, a method of mounting a touch sensor on a display screen of a liquid crystal display device has been put to practical use. The touch sensor has various methods such as a capacitive method, a resistive method, an optical method, an ultrasonic method, or an electromagnetic induction method, but a capacitive method is widely used. In recent years, a liquid crystal display having a touch sensing function having a built-in capacitive sensor is used as a touch sensor unit of the touch sensor.

종래의 액정 표시 장치에서는 액정 패널 상의 시인측 면에 터치 센서를 적층시키는 방식이 사용되었다. 이러한 방식을 애드-온 타입(Add-On Type)이라고 한다. 이것은 액정 표시 장치의 두께를 두껍게 만드는 요인이 된다. 이를 개선하기 위해 터치 센서를 액정 패널의 내부에 장착하는 방식이 고려되고 있다. 이러한 방식을 인-셀(In-Cell) 방식이라고 한다. 이것은 기존의 애드-온 타입 대비 액정 표시 장치의 두께가 박형화되는 장점이 있다. In the conventional liquid crystal display device, a method of laminating a touch sensor on a viewer side surface of a liquid crystal panel was used. This method is called an Add-On Type. This becomes a factor to increase the thickness of the liquid crystal display device. In order to improve this, a method of mounting the touch sensor inside the liquid crystal panel is being considered. This method is called an in-cell method. This has the advantage of reducing the thickness of the liquid crystal display compared to the existing add-on type.

그런데 이 경우 액정 패널 외부에는 소정의 면저항 범위 바람직하게는 1 x 108Ω/□ 내지 1 x 1012Ω/□의 면저항을 제공해야만 터치 성능에는 문제가 없을 수 있다. 액정 패널의 외부에 도전성 폴리머를 포함하는 앵커층을 형성하는 방법이 있다. 그러나 고온 고습에서 장기간 방치할 경우 면저항이 낮아질 수 있으며 앵커층의 추가로 인하여 애드-온 타입과 마찬가지로 액정 표시 장치의 두께를 두껍게 만들 수 있다. 따라서, 고온 고습에서 장시간 방치할 경우에도 외부 요인으로 인한 터치 기능이 우수한 패널을 필요로 한다. However, in this case, there may be no problem in touch performance only when a sheet resistance of preferably 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□ is provided outside the liquid crystal panel. There is a method of forming an anchor layer including a conductive polymer on the outside of the liquid crystal panel. However, if left for a long time at high temperature and high humidity, the sheet resistance may be lowered, and the thickness of the liquid crystal display may be made thicker as in the add-on type due to the addition of the anchor layer. Therefore, even when left for a long time at high temperature and high humidity, there is a need for a panel having an excellent touch function due to external factors.

본 발명의 배경기술은 일본공개특허 제2013-072951호 등에 개시되어 있다.Background art of the present invention is disclosed in Japanese Patent Application Laid-Open No. 2013-072951 and the like.

본 발명의 목적은 편광판을 고온 고습에서 장기간 방치하기 전 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이고, 편광판을 고온 고습에서 장기간 방치 후 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□인 편광판용 접착층을 포함하는 편광판을 제공하는 것이다.An object of the present invention is that the surface resistance of the adhesive layer for a polarizing plate is 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□ before leaving the polarizing plate at high temperature and high humidity for a long period of time, and after leaving the polarizing plate at high temperature and high humidity for a long time, the adhesive layer for the polarizing plate To provide a polarizing plate comprising an adhesive layer for a polarizing plate having a surface resistance of 1 x 10 8 Ω/□ to 1×10 12 Ω/□.

본 발명의 다른 목적은 편광판을 고온 고습에서 장기간 방치하기 전의 편광판용 접착층의 표면 저항과 편광판을 고온 고습에서 장기간 방치한 후의 편광판용 접착층의 표면 저항 간의 비가 낮은 편광판용 접착층을 포함하는 편광판을 제공하는 것이다.Another object of the present invention is to provide a polarizing plate comprising an adhesive layer for a polarizing plate with a low ratio between the surface resistance of the adhesive layer for a polarizing plate before leaving the polarizing plate at high temperature and high humidity for a long time and the surface resistance of the adhesive layer for a polarizing plate after leaving the polarizing plate at high temperature and high humidity for a long period of time will be.

본 발명의 또 다른 목적은 내부에 터치 센서를 포함하는 액정 패널(인-셀 액정 패널)에 적층하였을 때 상온 및 고온 고습에서도 터치 성능 및 터치 성능 감도가 우수하고 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수한 편광판을 제공하는 것이다.Another object of the present invention is that when laminated on a liquid crystal panel (in-cell liquid crystal panel) including a touch sensor therein, the touch performance and touch performance sensitivity are excellent even at room temperature, high temperature and high humidity, and the time for the polarizer to re-discolor under electrostatic shock It is to provide a polarizing plate which is short and is excellent in reliability.

본 발명의 또 다른 목적은 편광자와 보호층 간의 접착력, 내구성 및 내수성이 우수한 편광판을 제공하는 것이다.Another object of the present invention is to provide a polarizing plate having excellent adhesion between a polarizer and a protective layer, durability, and water resistance.

본 발명의 또 다른 목적은 상술한 접착층 및 편광판의 효과를 낼 수 있게 하는 편광판용 접착제 조성물을 제공하는 것이다.Another object of the present invention is to provide an adhesive composition for a polarizing plate that enables the effect of the above-described adhesive layer and polarizing plate.

본 발명의 일 관점은 편광판이다.One aspect of the present invention is a polarizing plate.

1. 편광판은 편광자; 및 상기 편광자의 적어도 일면에 순차적으로 형성된 편광판용 접착층과 보호층을 포함하고, 상기 편광판용 접착층은 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)를 포함하고, 상기 편광판용 접착층은 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이다.1. A polarizer is a polarizer; and an adhesive layer and a protective layer for a polarizing plate sequentially formed on at least one surface of the polarizer, wherein the adhesive layer for a polarizing plate includes poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS), and for the polarizing plate The adhesive layer has a surface resistance of 1×10 8 Ω/□ to 1×10 12 Ω/□.

2. 1.에서, 상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치한 후 상기 편광판용 접착층은 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이 될 수 있다.2. In 1., after leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours, the surface resistance of the adhesive layer for the polarizing plate may be 1×10 8 Ω/□ to 1×10 12 Ω/□ .

3. 1-2에서, 상기 편광판은 하기 식 1에 따른 표면 저항의 비가 0 초과 1 이하일 수 있다:3. In 1-2, the polarizing plate may have a surface resistance ratio of more than 0 to 1 or less according to Equation 1:

[식 1][Equation 1]

표면 저항의 비 = SR2/SR1Ratio of surface resistance = SR2/SR1

(상기 식 1에서, (In Equation 1 above,

SR1은 상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치하기 전의 편광판용 접착층의 표면 저항(단위:Ω/□)SR1 is the surface resistance of the adhesive layer for a polarizing plate before leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours (unit: Ω/□)

SR2는 상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치한 후의 전의 편광판용 접착층의 표면 저항(단위:Ω/□)).SR2 is the surface resistance (unit: Ω/□) of the adhesive layer for the polarizing plate before leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours.

4. 1-3에서, 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)은 상기 편광판용 접착층 중 1중량% 내지 50중량%로 포함될 수 있다.4. In 1-3, the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) may be included in an amount of 1 wt% to 50 wt% of the adhesive layer for the polarizing plate.

5. 1-4에서, 상기 편광판용 접착층은 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS), 폴리비닐알코올계 수지 및 글리옥실산 염을 포함하는 편광판용 접착제 조성물로 형성될 수 있다.5. In 1-4, the adhesive layer for a polarizing plate is an adhesive composition for a polarizing plate comprising the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS), polyvinyl alcohol-based resin, and glyoxylic acid salt. can be formed.

6. 1-5에서, 상기 폴리비닐알코올계 수지 100중량부에 대해, 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)는 5중량부 내지 30중량부로 포함되고, 상기 글리옥실산 염은 1중량부 내지 50중량부로 포함될 수 있다.6. In 1-5, with respect to 100 parts by weight of the polyvinyl alcohol-based resin, the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) is included in an amount of 5 to 30 parts by weight, and The glyoxylic acid salt may be included in an amount of 1 to 50 parts by weight.

7. 1-6에서, 상기 글리옥실산 염은 글리옥실산 리튬, 글리옥실산 나트륨, 글리옥실산 칼륨, 글리옥실산 마그네슘, 글리옥실산 칼슘, 글리옥실산 스트론튬, 글리옥실산 바륨 중 1종 이상을 포함될 수 있다.7. In 1-6, the glyoxylate salt is one of lithium glyoxylate, sodium glyoxylate, potassium glyoxylate, magnesium glyoxylate, calcium glyoxylate, strontium glyoxylate, barium glyoxylate more may be included.

본 발명의 일 관점은 편광판용 접착제 조성물이다.One aspect of the present invention is an adhesive composition for a polarizing plate.

1. 편광판용 접착제 조성물은 폴리비닐알코올계 수지, 폴리에틸렌디옥시티오펜-폴리스티렌술폰산(PEDOT-PSS) 및 글리옥실산 염을 포함한다.1. The adhesive composition for a polarizing plate includes a polyvinyl alcohol-based resin, polyethylenedioxythiophene-polystyrenesulfonic acid (PEDOT-PSS), and a glyoxylic acid salt.

2. 1에서, 상기 폴리비닐알코올계 수지 100중량부에 대해, 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)는 5중량부 내지 30중량부로 포함되고, 상기 글리옥실산 염은 1중량부 내지 50중량부로 포함될 수 있다.2. In 1, with respect to 100 parts by weight of the polyvinyl alcohol-based resin, the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) is included in an amount of 5 to 30 parts by weight, and the glyoxyl The acid salt may be included in an amount of 1 to 50 parts by weight.

3. 1-2에서, 상기 글리옥실산 염은 글리옥실산 리튬, 글리옥실산 나트륨, 글리옥실산 칼륨, 글리옥실산 마그네슘, 글리옥실산 칼슘, 글리옥실산 스트론튬, 글리옥실산 바륨 중 1종 이상을 포함할 수 있다.3. In 1-2, the glyoxylate salt is one of lithium glyoxylate, sodium glyoxylate, potassium glyoxylate, magnesium glyoxylate, calcium glyoxylate, strontium glyoxylate, barium glyoxylate may include more than one.

4. 1-3에서, 상기 폴리비닐알코올계 수지는 아세토아세틸기 변성도 1몰% 내지 30몰%인 폴리비닐알코올계 수지를 포함할 수 있다.4. In 1-3, the polyvinyl alcohol-based resin may include a polyvinyl alcohol-based resin having an acetoacetyl group modification degree of 1 mol% to 30 mol%.

5. 1-4에서, 상기 편광판용 접착제 조성물은 상기 편광판용 접착제 조성물의 경화물에 대해 25℃에서 측정한 표면 저항 및 85℃, 85% 상대습도에서 250시간 동안 방치한 후 25℃에서 측정한 표면 저항이 각각 1 x 108 내지 1 x 1012(Ω/□)일 수 있다.5. In 1-4, the adhesive composition for a polarizing plate had a surface resistance measured at 25° C. for the cured product of the polarizing plate adhesive composition, and left for 250 hours at 85° C. and 85% relative humidity, and then measured at 25° C. The surface resistance may be 1 x 10 8 to 1 x 10 12 (Ω/□), respectively.

본 발명의 광학 표시 장치는 본 발명의 편광판을 포함한다.The optical display device of the present invention includes the polarizing plate of the present invention.

본 발명은 편광판을 고온 고습에서 장기간 방치하기 전 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이고 편광판을 고온 고습에서 장기간 방치 후 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□인 편광판용 접착층을 포함하는 편광판을 제공하였다.In the present invention, the surface resistance of the adhesive layer for a polarizing plate is from 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□ before the polarizing plate is left at high temperature and high humidity for a long time, and the surface resistance of the adhesive layer for the polarizing plate after leaving the polarizing plate at high temperature and high humidity for a long period of time A polarizing plate including an adhesive layer for a polarizing plate of 1×10 8 Ω/□ to 1×10 12 Ω/□ was provided.

본 발명은 편광판을 고온 고습에서 장기간 방치하기 전의 편광판용 접착층의 표면 저항과 편광판을 고온 고습에서 장기간 방치한 후의 편광판용 접착층의 표면 저항의 비가 낮은 편광판용 접착층을 포함하는 편광판을 제공하였다.The present invention provides a polarizing plate comprising an adhesive layer for a polarizing plate with a low ratio of the surface resistance of the adhesive layer for a polarizing plate before leaving the polarizing plate at high temperature and high humidity for a long time to the surface resistance of the adhesive layer for a polarizing plate after leaving the polarizing plate at high temperature and high humidity for a long period of time.

본 발명은 내부에 터치 센서를 포함하는 액정 패널(인 셀형 액정 패널)에 적층하였을 때 상온 및 고온 고습에서도 터치 성능과 터치 성능 감도가 우수하고 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수한 편광판을 제공하였다.When the present invention is laminated on a liquid crystal panel (in-cell type liquid crystal panel) having a touch sensor inside, it has excellent touch performance and touch performance sensitivity even at room temperature, high temperature and high humidity, and has excellent reliability because the polarizer re-discoloration time is short under electrostatic shock. A polarizing plate was provided.

본 발명은 편광자와 보호층 간의 접착력, 내구성 및 내수성이 우수한 편광판을 제공하였다.The present invention provides a polarizing plate having excellent adhesion between a polarizer and a protective layer, durability, and water resistance.

본 발명은 상술한 접착층 및 편광판의 효과를 낼 수 있게 하는 편광판용 접착제 조성물을 제공하였다.The present invention provides an adhesive composition for a polarizing plate that enables the effect of the above-described adhesive layer and polarizing plate.

도 1은 본 발명의 일 실시예에 따른 편광판의 단면도이다.
도 2는 본 발명의 일 실시예에 따른 광학표시장치의 단면도이다.
1 is a cross-sectional view of a polarizing plate according to an embodiment of the present invention.
2 is a cross-sectional view of an optical display device according to an exemplary embodiment of the present invention.

이하, 첨부한 도면을 참조하여, 본 출원의 실시예들을 보다 상세하게 설명한다. 그러나 본 출원에 개시된 기술은 여기서 설명되는 실시예들에 한정되지 않고 다른 형태로 구체화될 수도 있다. 단지, 여기서 소개되는 실시예들은 개시된 내용이 철저하고 완전해질 수 있도록 그리고 당업자에게 본 출원의 사상이 충분히 전달될 수 있도록 하기 위해 제공되는 것이다. 도면에서 각 장치의 구성요소를 명확하게 표현하기 위하여 상기 구성요소의 폭이나 두께 등의 크기를 다소 확대하여 나타내었다. 복수의 도면들 상에서 동일 부호는 실질적으로 서로 동일한 구성요소를 지칭한다.Hereinafter, embodiments of the present application will be described in more detail with reference to the accompanying drawings. However, the technology disclosed in the present application is not limited to the embodiments described herein and may be embodied in other forms. However, the embodiments introduced herein are provided so that the disclosed content may be thorough and complete, and the spirit of the present application may be sufficiently conveyed to those skilled in the art. In order to clearly express the components of each device in the drawings, the sizes such as widths and thicknesses of the components are slightly enlarged. In a plurality of drawings, the same reference numerals refer to elements that are substantially the same as each other.

본 명세서에서 "상부"와 "하부"는 도면을 기준으로 정의한 것으로서, 시 관점에 따라 "상부"가 "하부"로 "하부"가 "상부"로 변경될 수 있고, "위(on)" 또는 "상(on)"으로 지칭되는 것은 바로 위뿐만 아니라 중간에 다른 구조를 개재한 경우도 포함할 수 있다. 반면, "직접 위(directly on)" 또는 "바로 위" 또는 "직접적으로 형성"으로 지칭되는 것은 중간체 등의 다른 구조를 개재하지 않은 것을 나타낸다.In this specification, "upper" and "lower" are defined based on the drawings, and depending on the perspective of the city, "upper" may be changed to "lower" and "lower" to "upper", and "on" or What is referred to as “on” may include cases where other structures are interposed in the middle as well as immediately above. On the other hand, reference to “directly on” or “directly on” or “directly formed” indicates that no other structure, such as an intermediate, is interposed.

본 명세서에서 수치 범위 기재시 X 내지 Y는 X 이상 Y 이하(X≤ ≤Y)를 의미한다.In the present specification, when describing a numerical range, X to Y means X or more and Y or less (X≤≤Y).

본 명세서에서 특별히 언급되지 않는 한 표면 저항은 25℃에서 측정된 값을 의미한다.Unless otherwise specified herein, surface resistance means a value measured at 25°C.

액정 패널은 서로 대향하는 상부 기판 및 하부 기판, 상기 상부 기판과 하부 기판 사이에 배치되는 액정층을 포함한다. 액정표시장치의 박형화를 위해 상부 기판과 하부 기판 사이에 터치 센서가 포함될 수 있다. 이러한 구조를 인 셀형 액정 패널이라고 한다.The liquid crystal panel includes an upper substrate and a lower substrate facing each other, and a liquid crystal layer disposed between the upper substrate and the lower substrate. A touch sensor may be included between the upper substrate and the lower substrate in order to reduce the thickness of the liquid crystal display. Such a structure is called an in-cell liquid crystal panel.

본 발명의 발명자는 상술 인 셀형 액정 패널의 일면에 배치되어 고온 고습에서 방치하기 전뿐만 아니라 고온 고습에서 방치한 후에도 정상적인 터치 성능이 나오고 터치 성능의 감도가 우수하며 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수하고 편광자와 보호층 간의 접착력, 내구성 및 내수성이 우수한 편광판을 개발하기 위해 노력하였다.The inventor of the present invention is disposed on one surface of the above-mentioned in-cell liquid crystal panel and shows normal touch performance and excellent touch performance sensitivity before leaving it at high temperature and high humidity as well as after leaving at high temperature and high humidity. Efforts have been made to develop a polarizing plate that is short, has excellent reliability, and has excellent adhesion, durability, and water resistance between the polarizer and the protective layer.

본 발명자는 편광자와 보호층 사이에 형성되는 편광판용 접착층을 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS), 글리옥실산 염을 포함하는 편광판용 접착제 조성물로 형성함으로써 편광판을 고온 고습에서 방치하기 전과 고온 고습에서 방치한 후 모두 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이 됨을 확인하였다. 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이고 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)를 포함함으로써 고온 고습에서 방치하기 전 및 고온 고습에서 방치한 후 각각 정상적인 터치 성능이 나오고 터치 성능의 감도가 우수하며 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수하다. 특히, 본 발명의 편광판은 인 셀형 액정 패널에 배치시 상술한 터치 성능, 터치 성능의 감도 및 신뢰성을 확보할 수 있다.The present inventor forms an adhesive layer for a polarizing plate formed between a polarizer and a protective layer with an adhesive composition for a polarizing plate comprising poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) and glyoxylic acid salt to form a polarizing plate It was confirmed that the surface resistance of the adhesive layer for a polarizing plate was 1 x 10 8 Ω/□ to 1×10 12 Ω/□ both before leaving it at high temperature and high humidity and after leaving it at high temperature and high humidity. The surface resistance of the adhesive layer for a polarizing plate is 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□ and contains poly(ethylenedioxythiophene) poly(styrenesulfonate), so that it is left at high temperature and high humidity before leaving it at high temperature and high humidity After each operation, normal touch performance is obtained, the sensitivity of the touch performance is excellent, and the re-discoloration time of the polarizer under electrostatic shock is short, so the reliability is excellent. In particular, the polarizing plate of the present invention can secure the above-described touch performance, sensitivity and reliability of the touch performance when disposed in the in-cell liquid crystal panel.

폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)를 편광판의 최 외곽에 형성된 앵커층에 포함할 수도 있지만, 이 경우 편광판을 고온 고습에서 장기간 방치하는 경우 표면 저항 1 x 108Ω/□ 내지 1 x 1012Ω/□을 확보하기 어렵고 편광판을 고온 고습에서 장기간 방치한 후에는 터치 성능과 터치 감도가 떨어질 수 있다. 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트) 대신에 ITO(indium tin oxide)를 편광판용 접착층에 포함하는 경우 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이더라도 터치 성능 및 터치 성능 감도가 좋지 않았으며 상기 신뢰성이 좋지 않았다.Poly(ethylenedioxythiophene) poly(styrenesulfonate) may be included in the anchor layer formed at the outermost part of the polarizing plate, but in this case, when the polarizing plate is left at high temperature and high humidity for a long time, the surface resistance is 1 x 10 8 Ω/□ to 1 It is difficult to secure x 10 12 Ω/□, and the touch performance and touch sensitivity may deteriorate after the polarizer is left in high temperature and high humidity for a long time. Poly(ethylenedioxythiophene) When ITO (indium tin oxide) is included in the adhesive layer for a polarizing plate instead of poly(styrenesulfonate), the surface resistance of the adhesive layer for a polarizing plate is 1 x 10 8 Ω/□ to 1 x 10 12 Ω/ Even if □, the touch performance and touch performance sensitivity were not good, and the reliability was not good.

이하, 본 발명의 일 실시예에 따른 편광판을 도 1을 참고하여 설명한다.Hereinafter, a polarizing plate according to an embodiment of the present invention will be described with reference to FIG. 1 .

도 1을 참고하면, 편광판은 편광자(10), 편광자(10)의 일면에 적층된 제1보호층(20) 및 편광자(10)의 다른 일면에 적층된 제2보호층(30)을 포함할 수 있다. 제1보호층(20), 제2보호층(30)은 각각 편광판용 접착층(40)에 의해 편광자에 적층될 수 있다.Referring to FIG. 1 , the polarizing plate may include a polarizer 10 , a first protective layer 20 stacked on one surface of the polarizer 10 , and a second protective layer 30 stacked on the other surface of the polarizer 10 . can The first protective layer 20 and the second protective layer 30 may be laminated on the polarizer by an adhesive layer 40 for a polarizing plate, respectively.

편광판용 접착층(40)은 편광자와 제1보호층, 편광자와 제2보호층을 서로 접착시킴으로써 편광판의 외형을 유지하고 기계적 강도를 유지할 수 있다. 일 구체예에서, 편광판용 접착층은 편광자와 제1보호층, 편광자와 제2보호층에 각각 직접적으로 형성되어 있다. 상기 "직접적으로 형성"은 편광자와 보호층 사이에 본 발명의 편광판용 접착층 이외에 다른 점착층, 접착층, 또는 점접착층이 구비되지 않음을 의미한다.The adhesive layer 40 for the polarizing plate may maintain the external appearance of the polarizing plate and maintain mechanical strength by bonding the polarizer and the first protective layer, and the polarizer and the second protective layer to each other. In one embodiment, the adhesive layer for the polarizing plate is directly formed on the polarizer and the first protective layer, and the polarizer and the second protective layer, respectively. The "directly formed" means that no other adhesive layer, adhesive layer, or adhesive layer is provided between the polarizer and the protective layer other than the adhesive layer for the polarizing plate of the present invention.

편광판용 접착층(40)은 하기 상술되는 편광판용 접착제 조성물로 형성된다. 또한, 편광판을 고온 고습에서 장기간 방치하기 전 및 고온 고습에서 장기간 방치한 후 각각 편광판용 접착층(40)의 표면 저항은 1 x 108Ω/□ 내지 1 x 1012Ω/□이다. 이를 통해, 상술한 인 셀용 액정 패널에 적층시 터치 성능이 정상적으로 구현되고 터치 성능의 감도도 우수하며 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수하다. 상술한 표면 저항은 하기 상술되는 편광판용 접착제 조성물 중 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)를 구비함으로써 구현될 수 있다.The adhesive layer 40 for a polarizing plate is formed of the adhesive composition for a polarizing plate to be described in detail below. In addition, the surface resistance of the adhesive layer 40 for a polarizing plate is 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□ before leaving the polarizing plate at high temperature and high humidity for a long time and after leaving it at high temperature and high humidity for a long time. Through this, the touch performance is normally realized when laminated on the above-described in-cell liquid crystal panel, the sensitivity of the touch performance is excellent, and the time for the polarizer to re-discolor under the electrostatic shock is short, so the reliability is excellent. The above-described surface resistance may be realized by including poly(ethylenedioxythiophene) poly(styrenesulfonate) in the adhesive composition for a polarizing plate to be described in detail below.

일 구체예에서, 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치하기 전 편광판용 접착층(40)은 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□, 구체적으로 1 x 109Ω/□ 내지 1 x 1011Ω/□이 될 수 있다. 상기 범위에서, 상술한 인 셀용 액정 패널에 적층시 터치 성능이 정상적으로 구현되고 터치 성능의 감도도 우수하며 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수할 수 있다.In one embodiment, the surface resistance of the adhesive layer 40 for a polarizing plate before leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours is 1 x 10 8 Ω/□ to 1×10 12 Ω/□, specifically 1 x 10 9 Ω/□ to 1 x 10 11 Ω/□. In the above range, when laminated on the above-described in-cell liquid crystal panel, the touch performance is normally realized, the sensitivity of the touch performance is excellent, and the time for the polarizer to re-discolor under the electrostatic shock is short, so the reliability can be excellent.

일 구체예에서, 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치한 후 편광판용 접착층(40)은 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□, 구체적으로 1 x 109Ω/□ 내지 1 x 1011Ω/□이 될 수 있다. 상기 범위에서, 상술한 인 셀용 액정 패널에 적층시 터치 성능이 정상적으로 구현되고 터치 성능의 감도도 우수하며 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수할 수 있다.In one embodiment, after the polarizing plate is left at 85° C. and 85% relative humidity for 250 hours, the adhesive layer 40 for the polarizing plate has a surface resistance of 1×10 8 Ω/□ to 1×10 12 Ω/□, specifically 1 x 10 9 Ω/□ to 1 x 10 11 Ω/□. In the above range, when laminated on the above-described in-cell liquid crystal panel, the touch performance is normally realized, the sensitivity of the touch performance is excellent, and the time for the polarizer to re-discolor under the electrostatic shock is short, so the reliability can be excellent.

편광판은 하기 식 1에 따른 표면 저항의 비가 0 초과 1 이하, 예를 들면 0.1 이상 1 이하가 되도록 함으로써, 본 발명의 편광판을 장착한 액정표시장치의 신뢰성을 높일 수 있고 고온 고습에서 장기간 방치하기 전 및 방치한 후 모두에서 우수한 터치 성능 및 터치 감도를 갖는 편광판을 제공할 수 있다:The polarizing plate can increase the reliability of the liquid crystal display equipped with the polarizing plate of the present invention by allowing the ratio of the surface resistance according to the following formula 1 to be more than 0 and less than 1, for example, 0.1 or more and 1 or less, and before leaving it for a long time at high temperature and high humidity and a polarizing plate having excellent touch performance and touch sensitivity in both after leaving it to stand:

[식 1][Equation 1]

표면 저항의 비 = SR2 / SR1Ratio of surface resistance = SR2 / SR1

(상기 식 1에서, (In Equation 1 above,

SR1은 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치하기 전의 편광판용 접착층의 표면 저항(단위:Ω/□)SR1 is the surface resistance of the adhesive layer for a polarizing plate before leaving the polarizing plate at 85°C and 85% relative humidity for 250 hours (unit: Ω/□)

SR2는 상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치한 후의 전의 편광판용 접착층의 표면 저항(단위:Ω/□)). SR2 is the surface resistance (unit: Ω/□) of the adhesive layer for the polarizing plate before leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours.

상술한 [식 1]의 표면 저항의 비는 하기 상술되는 편광판용 접착제 조성물 중 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)을 구비함으로써 구현될 수 있다.The ratio of the surface resistance of the above-mentioned [Equation 1] may be implemented by including poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) in the adhesive composition for a polarizing plate described in detail below.

일 구체예에서, 편광판은 편광자, 편광자의 광출사면에 형성된 제1보호층, 편광자의 광입사면에 형성된 제2보호층을 포함하고, 상기 편광자와 제1보호층 사이에 형성된 편광판용 접착층은 상술한 표면 저항 및 상기 식 1의 표면 저항의 비를 만족할 수 있다.In one embodiment, the polarizing plate includes a polarizer, a first protective layer formed on the light exit surface of the polarizer, and a second protective layer formed on the light incident surface of the polarizer, and the adhesive layer for a polarizing plate formed between the polarizer and the first protective layer is The ratio of the above-described surface resistance and the surface resistance of Equation 1 may be satisfied.

다른 구체예에서, 편광판은 편광자, 편광자의 광출사면에 형성된 제1보호층, 편광자의 광입사면에 형성된 제2보호층을 포함하고, 상기 편광자와 제1보호층 사이에 형성된 편광판용 접착층 및 상기 편광자와 제2보호층 사이에 형성된 편광판용 접착층은 각각 상술한 표면 저항 및 상기 식 1의 표면 저항의 비를 만족할 수 있다.In another embodiment, the polarizing plate includes a polarizer, a first protective layer formed on the light exit surface of the polarizer, and a second protective layer formed on the light incident surface of the polarizer, and an adhesive layer for a polarizing plate formed between the polarizer and the first protective layer; The adhesive layer for a polarizing plate formed between the polarizer and the second protective layer may satisfy the ratio of the above-described surface resistance and the surface resistance of Equation 1, respectively.

편광판용 접착층은 편광자와 보호층을 접착시키는 접착력이 우수할 뿐만 아니라 편광판의 내구성과 내수성을 높일 수 있다. 일 구체예에서, 편광판을 길이 x 폭 50mm x 50mm로 절단시킨 시편을 유리판에 부착시키고 44℃의 물에 완전히 침수시킨 다음 12시간 동안 방치하였을 때, 편광판에서 제1보호층 또는 제2보호층이 편광자로부터 박리되는 최대 길이가 1mm 미만, 구체적으로 0mm 이상 1mm 미만이 될 수 있다. 상기 범위에서, 편광판의 내수성이 우수하여 표시장치의 신뢰성을 높일 수 있다. The adhesive layer for a polarizing plate not only has excellent adhesion for bonding the polarizer and the protective layer, but also can improve durability and water resistance of the polarizing plate. In one embodiment, the first protective layer or the second protective layer on the polarizing plate when a specimen cut into a length x width 50 mm x 50 mm is attached to a glass plate and completely immersed in water at 44 ° C. and left for 12 hours. The maximum length to be peeled from the polarizer may be less than 1 mm, specifically 0 mm or more and less than 1 mm. Within the above range, the water resistance of the polarizing plate may be excellent, and thus the reliability of the display device may be improved.

폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)은 편광판용 접착층 중 1중량% 내지 50중량%, 구체적으로 5중량% 내지 30중량%, 더 구체적으로 10중량% 내지 25중량%로 포함될 수 있다. 상기 범위에서, 85℃ 및 85% 상대습도에서 250시간 경과하는 가혹 조건 이후에도 터치 성능 및 터치 성능 감도에 문제가 없이 정상 작동하는 효과가 있을 수 있다.Poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) is 1% to 50% by weight, specifically 5% to 30% by weight, more specifically 10% to 25% by weight of the adhesive layer for a polarizing plate % may be included. In the above range, there may be an effect of normal operation without problems in touch performance and touch performance sensitivity even after 250 hours of harsh conditions at 85° C. and 85% relative humidity.

상술한 본 발명의 효과는 하기 상술되는 편광판용 접착제 조성물에 의해 그대로 구현될 수 있다. 이하, 편광판용 접착제 조성물에 대해 상세히 설명한다.The effects of the present invention described above can be realized as it is by the adhesive composition for a polarizing plate described in detail below. Hereinafter, the adhesive composition for a polarizing plate will be described in detail.

편광판용 접착제 조성물은 폴리비닐알코올계 수지, 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트) 및 글리옥실산 염을 포함한다.The adhesive composition for a polarizing plate includes a polyvinyl alcohol-based resin, poly(ethylenedioxythiophene) poly(styrenesulfonate), and glyoxylic acid salt.

폴리비닐알코올계 수지는 비닐계 고분자로서, 편광자로 폴리비닐알코올계 편광자를 포함하는 경우 접착력 면에서 다른 접착성 수지보다 우수할 수 있다.The polyvinyl alcohol-based resin is a vinyl-based polymer, and when a polyvinyl alcohol-based polarizer is included as a polarizer, it may be superior to other adhesive resins in terms of adhesive strength.

폴리비닐알코올계 수지는 폴리아세트산비닐을 비누화하여 얻어진 폴리비닐알코올 또는 그의 유도체, 또는 아세트산 비닐과 공중합성을 갖는 단량체와의 공중합체의 비누화물, 또는 폴리비닐알코올을 아세틸화, 우레탄화, 에테르화, 그라프트화 또는 인산 에스테르화하여 얻어진 변성 폴리비닐알코올계 수지를 포함할 수 있다. 이들은 단독 또는 2종 이상 혼합하여 포함될 수 있다. 상기 공중합성을 갖는 단량체는 (무수)말레산, 푸마르산, 크로톤산, 이타콘산, (메트)아크릴산 등의 불포화 카르복시산 또는 그의 에스테르류, 에틸렌, 프로필렌 등의 알파-올레핀, (메트)알릴술폰산, 모노알킬말레에이트, 디술폰산 소다알킬말레에이트, N-메틸올아크릴아미드, 아크릴아미드알킬술폰산 알칼리염, N-비닐피롤리돈, N-비닐피롤리돈 유도체 등을 들 수 있다.The polyvinyl alcohol-based resin is a saponified product of polyvinyl alcohol or a derivative thereof obtained by saponifying polyvinyl acetate, or a copolymer of vinyl acetate and a monomer having copolymerizability, or acetylation, urethanization, or etherification of polyvinyl alcohol. , may include a modified polyvinyl alcohol-based resin obtained by grafting or phosphoric acid esterification. These may be included alone or in mixture of two or more. Monomers having the copolymerizability include unsaturated carboxylic acids such as (anhydride) maleic acid, fumaric acid, crotonic acid, itaconic acid, and (meth)acrylic acid or esters thereof, alpha-olefins such as ethylene and propylene, (meth)allylsulfonic acid, mono Alkyl maleate, disulfonic acid sodium alkyl maleate, N-methylolacrylamide, acrylamide alkylsulfonic acid alkali salt, N-vinylpyrrolidone, N-vinylpyrrolidone derivative|guide_body, etc. are mentioned.

일 구체예에서, 폴리비닐알코올계 수지는 아세토아세틸기를 함유하는 폴리비닐알코올계 수지를 포함할 수 있다. 아세토아세틸기를 함유하는 폴리비닐알코올계 수지는 접착제층의 내수성을 개선하는데 도움을 줄 수 있다. In one embodiment, the polyvinyl alcohol-based resin may include a polyvinyl alcohol-based resin containing an acetoacetyl group. The polyvinyl alcohol-based resin containing an acetoacetyl group may help to improve the water resistance of the adhesive layer.

일 구체예에서, 폴리비닐알코올계 수지의 아세토아세틸기 변성도는 1몰% 내지 30몰%, 바람직하게는 1몰% 내지 10몰%가 될 수 있다. 상기 범위에서, 글리옥실산 염과의 충분한 반응점을 제공함으로써 접착력이 나올 수 있고, 편광판의 내수성도 높일 수 있다. 아세토아세틸기를 함유하는 폴리비닐알코올계 수지를 제조하는 방법은 특별히 제한되지 않는다. 예를 들면, 폴리비닐알코올계 수지를 아세트산에 분산시키고 디케텐을 첨가하는 방법 등이 고려될 수 있다.In one embodiment, the degree of acetoacetyl group modification of the polyvinyl alcohol-based resin may be 1 mol% to 30 mol%, preferably 1 mol% to 10 mol%. In the above range, by providing a sufficient reaction point with the glyoxylic acid salt, adhesion may come out, and the water resistance of the polarizing plate may also be improved. A method for producing a polyvinyl alcohol-based resin containing an acetoacetyl group is not particularly limited. For example, a method of dispersing a polyvinyl alcohol-based resin in acetic acid and adding diketene may be considered.

폴리비닐알코올계 수지의 평균 중합도와 검화도는 특별히 제한되는 것은 아니며, 평균 중합도는 100 내지 3,000, 평균 검화도는 85몰% 내지 100몰%가 될 수 있다. 상기 범위에서, 편광자와 보호층 간의 접착력이 나올 수 있다.The average degree of polymerization and saponification of the polyvinyl alcohol-based resin is not particularly limited, and the average degree of polymerization may be 100 to 3,000, and the average degree of saponification may be 85 mol% to 100 mol%. In the above range, adhesion between the polarizer and the protective layer may be obtained.

폴리비닐알코올계 수지는 편광판용 접착제 조성물의 용매 예를 들면 수계 용매 100중량부에 대해 1중량부 내지 20중량부, 구체적으로 1중량부 내지 10중량부로 포함될 수 있다. 상기 범위에서, 편광판용 접착층의 접착력이 나올 수 있고, 접착제 조성물의 점도가 급격하게 상승하지 않아서 공정성이 우수할 수 있다.The polyvinyl alcohol-based resin may be included in an amount of 1 to 20 parts by weight, specifically 1 to 10 parts by weight, based on 100 parts by weight of a solvent of the adhesive composition for a polarizing plate, for example, an aqueous solvent. In the above range, the adhesive strength of the adhesive layer for a polarizing plate may be obtained, and the viscosity of the adhesive composition may not increase rapidly, and thus processability may be excellent.

폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)는 폴리비닐알코올계 수지 100중량부에 대해 5중량부 내지 30중량부, 예를 들면 10중량부 내지 20중량부로 포함될 수 있다. 상기 범위에서, 본 발명의 편광판용 접착층의 표면 저항 1 x 108Ω/□ 내지 1 x 1012Ω/□를 확보할 수 있어 우수한 터치 성능 및 터치 감도를 제공할 수 있고, 과량 포함됨으로 인한 접착력 저하 및 광학적 투명성 저하의 문제가 없도록 할 수 있다.Poly(ethylenedioxythiophene) poly(styrene sulfonate) may be included in an amount of 5 to 30 parts by weight, for example, 10 to 20 parts by weight, based on 100 parts by weight of the polyvinyl alcohol-based resin. In the above range, the surface resistance of the adhesive layer for a polarizing plate of the present invention can be secured from 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□, thereby providing excellent touch performance and touch sensitivity, and adhesive strength due to excessive inclusion It can be made so that there is no problem of deterioration and optical transparency deterioration.

글리옥실산 염은 폴리비닐알코올계 수지와 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)의 혼합물에 포함되어 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)가 존재하는 경우에도 폴리비닐알콜계 수지를 가교시킴으로써 접착력을 제대로 구현하도록 할 수 있으며 내구성과 내수성을 동시에 높일 수 있고 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)가 잘 분산되도록 할 수 있다. 본 발명의 발명자는 글리옥실산 염 이외에 종래 폴리비닐알코올계 수지를 가교시키는 가교제를 포함하는 경우 본 발명의 효과가 나오지 않음을 확인하였다. 일 구체예에서, 본 발명의 편광판용 접착제 조성물에서는 가교제로서 글리옥실산 염만을 포함할 수 있다.Glyoxylic acid salt is included in the mixture of polyvinyl alcohol-based resin and poly(ethylenedioxythiophene) poly(styrenesulfonate), so that even when poly(ethylenedioxythiophene) poly(styrenesulfonate) is present, polyvinyl alcohol By crosslinking the resin-based resin, adhesion can be properly realized, durability and water resistance can be improved at the same time, and poly(ethylenedioxythiophene) and poly(styrenesulfonate) can be well dispersed. The inventor of the present invention confirmed that the effect of the present invention does not come out when a crosslinking agent for crosslinking a conventional polyvinyl alcohol-based resin is included in addition to the glyoxylic acid salt. In one embodiment, the adhesive composition for a polarizing plate of the present invention may include only glyoxylic acid salt as a crosslinking agent.

글리옥실산 염은 글리옥실산의 알칼리 금속염, 글리옥실산의 알칼리 토금속염 중 1종 이상을 포함할 수 있다. 예를 들면, 글리옥실산 염은 글리옥실산 리튬, 글리옥실산 나트륨, 글리옥실산 칼륨 등의 알칼리 금속염, 글리옥실산 마그네슘, 글리옥실산 칼슘, 글리옥실산 스트론튬, 글리옥실산 바륨 등의 알칼리 토금속염이 사용될 수 있다. 바람직하게는, 글리옥실산 나트륨 염을 사용할 수 있다.The glyoxylic acid salt may include at least one of an alkali metal salt of glyoxylic acid and an alkaline earth metal salt of glyoxylic acid. For example, glyoxylate salts include alkali metal salts such as lithium glyoxylate, sodium glyoxylate, potassium glyoxylate, magnesium glyoxylate, calcium glyoxylate, strontium glyoxylate, and barium glyoxylate. Earth metal salts may be used. Preferably, glyoxylic acid sodium salt can be used.

글리옥실산 염은 글리옥실산 염 자체로 접착제 조성물에 포함될 수 있으나 글리옥실산 염의 수화물로도 포함될 수 있다.The glyoxylic acid salt may be included in the adhesive composition by itself, but may also be included as a hydrate of the glyoxylic acid salt.

글리옥실산 염은 폴리비닐알코올계 수지 100중량부에 대해 1중량부 내지 50중량부, 예를 들면 10중량부 내지 50중량부로 포함될 수 있다. 상기 범위에서, 본 발명의 편광판용 접착층의 표면 저항 1 x 108Ω/□ 내지 1 x 1012Ω/□를 확보할 수 있고, 과량 포함됨으로 인한 접착력 저하 및 광학적 투명성 저하의 문제가 없도록 할 수 있으며 내수성과 내구성을 높일 수 있다.The glyoxylic acid salt may be included in an amount of 1 part by weight to 50 parts by weight, for example, 10 parts by weight to 50 parts by weight based on 100 parts by weight of the polyvinyl alcohol-based resin. In the above range, the surface resistance of the adhesive layer for a polarizing plate of the present invention can be secured from 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□, and there is no problem of lowering adhesion and lowering of optical transparency due to excessive inclusion and can improve water resistance and durability.

일 구체예에서, 편광판용 접착제 조성물은 가교제로서 지르코늄 화합물, 폴리에틸렌이민 중 1종 이상을 포함하지 않을 수 있다.In one embodiment, the adhesive composition for a polarizing plate may not include at least one of a zirconium compound and polyethyleneimine as a crosslinking agent.

편광판용 접착제 조성물은 수계 용매를 더 포함할 수 있다. 수계 용매는 폴리비닐알코올계 수지, 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트) 및 글리옥실산 염을 분산시켜 접착제 조성물의 공정성을 높일 수 있다. 수계 용매는 특별히 제한되지 않지만, 물 등을 포함할 수 있다.The adhesive composition for a polarizing plate may further include an aqueous solvent. The aqueous solvent may increase the fairness of the adhesive composition by dispersing the polyvinyl alcohol-based resin, poly(ethylenedioxythiophene) poly(styrenesulfonate), and glyoxylic acid salt. The aqueous solvent is not particularly limited, and may include water and the like.

편광판용 접착제 조성물은 당업자에게 알려진 통상의 첨가제를 더 포함할 수 있다. 첨가제는 편광판용 접착층에 추가적인 기능을 제공할 수 있다. 구체적으로, 첨가제는 반응 억제제, 접착성 향상제, 요변성 부여제, 도전성 부여제, 색소 조정제, 안정화제, 산화방지제, 레벨링제 중 하나 이상을 포함할 수 있지만, 이에 제한되지 않는다.The adhesive composition for a polarizing plate may further include conventional additives known to those skilled in the art. The additive may provide an additional function to the adhesive layer for the polarizing plate. Specifically, the additive may include, but is not limited to, one or more of a reaction inhibitor, an adhesion enhancer, a thixotropic agent, a conductivity-imparting agent, a color adjuster, a stabilizer, an antioxidant, and a leveling agent.

편광판용 접착제 조성물은 pH가 1 내지 10, 구체적으로 2 내지 7이 될 수 있다. 상기 범위에서, 접착제 조성물이 겔화되지 않고, 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)가 액상에서 안정적으로 분산이 유지될 수 있는 효과가 있을 수 있다.The adhesive composition for a polarizing plate may have a pH of 1 to 10, specifically 2 to 7. In the above range, the adhesive composition does not gel, and poly(ethylenedioxythiophene) poly(styrenesulfonate) may have an effect of stably maintaining dispersion in a liquid phase.

편광판용 접착제 조성물은 편광판용 접착제 조성물의 경화물에 대해 85℃, 85% 상대습도에서 250시간 동안 방치하기 전 상온(예:25℃)에서 측정한 표면 저항 및 85℃, 85% 상대습도에서 250시간 동안 방치한 후 측정한 표면 저항이 각각 1 x 108 내지 1 x 1012(Ω/□)가 될 수 있다. 상기 표면 저항은 하기 상술되는 측정 방법에 의해 측정될 수 있다.The adhesive composition for a polarizing plate has a surface resistance measured at room temperature (eg 25°C) before leaving it for 250 hours at 85°C and 85% relative humidity with respect to the cured product of the adhesive composition for a polarizing plate, and 250 at 85°C and 85% relative humidity. After standing for a period of time, the measured surface resistance may be 1 x 10 8 to 1 x 10 12 (Ω/□), respectively. The surface resistance can be measured by the measuring method detailed below.

일 구체예에서, 편광판용 접착층은 대전방지제를 포함하지 않을 수 있다. 상기 "대전방지제"는 당업자에게 알려진 통상의 대전방지제를 포함하고, 예를 들면 ITO, 이온성 액체, 금속염 중 1종 이상을 의미할 수 있지만, 이에 제한되지 않는다. 상기 금속염은 대전방지제로 통상적으로 사용되는 것으로 예를 들면 알칼리 금속염 등을 포함할 수 있지만, 이에 제한되는 것은 아니다.In one embodiment, the adhesive layer for a polarizing plate may not include an antistatic agent. The "antistatic agent" includes conventional antistatic agents known to those skilled in the art, and may mean, for example, one or more of ITO, ionic liquids, and metal salts, but is not limited thereto. The metal salt is commonly used as an antistatic agent and may include, for example, an alkali metal salt, but is not limited thereto.

편광판용 접착층(40)은 두께가 10㎚ 내지 500㎚, 구체적으로 50㎚ 내지 100㎚가 될 수 있다. 상기 범위에서, 편광판에 사용될 수 있고, 편광판의 박형화 효과를 구현할 수 있다.The adhesive layer 40 for a polarizing plate may have a thickness of 10 nm to 500 nm, specifically 50 nm to 100 nm. In the above range, it may be used for a polarizing plate, and a thinning effect of the polarizing plate may be implemented.

도 1은 편광자의 광 출사면에 배치된 편광판용 접착층(40)과 편광자의 광 입사면에 배치된 편광판용 접착층(40)이 모두 상술한 편광판용 접착제 조성물로 형성된 경우를 도시한 것이다. 그러나, 상술한 편광판용 접착제 조성물로 형성된 편광판용 접착층은 편광자의 광 출사면에만 배치되거나 편광자의 광 입사면에만 배치될 수도 있다.1 illustrates a case in which both the adhesive layer 40 for a polarizing plate disposed on the light exit surface of the polarizer and the adhesive layer 40 for the polarizer plate 40 disposed on the light incident surface of the polarizer are formed of the above-described adhesive composition for a polarizer plate. However, the adhesive layer for a polarizing plate formed of the above-described adhesive composition for a polarizing plate may be disposed only on the light exit surface of the polarizer or only on the light incident surface of the polarizer.

편광자(10)는 당업자에게 알려진 통상의 편광자를 포함할 수 있다. 예를 들면, 편광자는 폴리비닐알콜(PVA)계 수지 필름 또는 폴리프로필렌(PP)계 수지 필름으로 제조된 편광자를 포함할 수 있다. 구체적으로, 편광자는 폴리비닐알콜계 수지 필름에 요오드, 이색성 염료 중 하나 이상이 흡착된 폴리비닐알콜계 편광자, 또는 폴리비닐알콜계 수지 필름을 탈수시켜 제조된 폴리엔계 편광자가 될 수 있다. 폴리비닐알콜계 수지 필름은 검화도가 85몰% 내지 100몰%, 구체적으로 98몰% 내지 100몰%가 될 수 있다. 폴리비닐알콜계 수지 필름은 중합도가 1,000 내지 10,000, 구체적으로 1,500 내지 10,000이 될 수 있다. 상기 검화도 및 중합도에서, 편광자를 제조할 수 있다.The polarizer 10 may include a conventional polarizer known to those skilled in the art. For example, the polarizer may include a polarizer made of a polyvinyl alcohol (PVA)-based resin film or a polypropylene (PP)-based resin film. Specifically, the polarizer may be a polyvinyl alcohol-based polarizer in which at least one of iodine and a dichroic dye is adsorbed onto a polyvinyl alcohol-based resin film, or a polyene-based polarizer manufactured by dehydrating a polyvinyl alcohol-based resin film. The polyvinyl alcohol-based resin film may have a saponification degree of 85 mol% to 100 mol%, specifically 98 mol% to 100 mol%. The polyvinyl alcohol-based resin film may have a polymerization degree of 1,000 to 10,000, specifically 1,500 to 10,000. A polarizer can be manufactured from the said saponification degree and polymerization degree.

편광자(10)는 당업자에게 알려진 통상의 방법으로 제조될 수 있다. 편광자는 두께가 5㎛ 내지 30㎛, 구체적으로 5㎛ 내지 25㎛가 될 수 있다. 상기 범위에서, 편광판에 사용될 수 있고, 편광판의 박형화 효과를 구현할 수 있다.The polarizer 10 may be manufactured by a conventional method known to those skilled in the art. The polarizer may have a thickness of 5 μm to 30 μm, specifically 5 μm to 25 μm. In the above range, it may be used for a polarizing plate, and a thinning effect of the polarizing plate may be implemented.

제1보호층(20), 제2보호층(30)은 각각 편광자의 일면에 형성되어, 편광자를 보호한다. 제1보호층(20)은 제2보호층(30) 대비 동일 또는 이종의 재질로 형성될 수도 있고 동일 또는 이종의 두께를 가질 수도 있다.The first protective layer 20 and the second protective layer 30 are respectively formed on one surface of the polarizer to protect the polarizer. The first protective layer 20 may be formed of the same or different material compared to the second protective layer 30 , or may have the same or different thickness.

제1보호층은 광학적으로 투명한 보호필름 또는 보호코팅층으로 당업자에게 알려진 통상의 것을 포함할 수 있다. 예를 들면, 보호필름은 트리아세틸셀룰로스(TAC) 등을 포함하는 셀룰로스 에스테르계 수지, 비정성 환상 폴리올레핀 등을 포함하는 고리형 폴리올레핀계 수지, 폴리카보네이트계 수지, 폴리에틸렌테레프탈레이트(PET) 등을 포함하는 폴리에스테르계 수지, 폴리에테르술폰계 수지, 폴리술폰계 수지, 폴리아미드계 수지, 폴리이미드계 수지, 비환형-폴리올레핀계 수지, 폴리메틸메타아크릴레이트 수지 등을 포함하는 폴리아크릴레이트계 수지, 폴리비닐알코올계 수지, 폴리염화비닐계 수지, 폴리염화비닐리덴계 수지 중 하나 이상을 포함할 수 있다.The first protective layer may include a conventional optically transparent protective film or protective coating layer known to those skilled in the art. For example, the protective film includes a cellulose ester-based resin containing triacetylcellulose (TAC), etc., a cyclic polyolefin-based resin containing an amorphous cyclic polyolefin, etc., a polycarbonate-based resin, polyethylene terephthalate (PET), etc. Polyacrylate-based resins including polyester-based resins, polyethersulfone-based resins, polysulfone-based resins, polyamide-based resins, polyimide-based resins, acyclic-polyolefin-based resins, polymethyl methacrylate resins, and the like; It may include at least one of a polyvinyl alcohol-based resin, a polyvinyl chloride-based resin, and a polyvinylidene chloride-based resin.

제1보호층은 두께가 5㎛ 내지 200㎛, 구체적으로, 30㎛ 내지 120㎛이고, 보호 필름 타입의 경우 10㎛ 내지 100㎛가 될 수가 있고, 보호코팅층 타입의 경우 1㎛ 내지 50㎛가 될 수 있다. 상기 범위에서 발광표시장치에 사용할 수 있다.The first protective layer has a thickness of 5 μm to 200 μm, specifically, 30 μm to 120 μm, may be 10 μm to 100 μm in the case of a protective film type, and 1 μm to 50 μm in the case of a protective coating layer type can It can be used in the light emitting display device within the above range.

도 1에서 도시되지 않았지만, 편광판의 하부면 즉 제2보호층의 하부면에는 점착층이 더 형성될 수 있다. 점착층은 편광판을 액정 패널에 점착시킬 수 있다. 점착층은 당업자에게 알려진 통상의 점착제로 형성될 수 있다. 예를 들면, 점착층은 (메트)아크릴계 점착제로 형성될 수 있다. 이때, 점착층은 대전방지제를 포함하지 않을 수 있다. Although not shown in FIG. 1 , an adhesive layer may be further formed on the lower surface of the polarizing plate, that is, the lower surface of the second protective layer. The adhesive layer may adhere the polarizing plate to the liquid crystal panel. The pressure-sensitive adhesive layer may be formed of a conventional pressure-sensitive adhesive known to those skilled in the art. For example, the pressure-sensitive adhesive layer may be formed of a (meth)acrylic pressure-sensitive adhesive. In this case, the adhesive layer may not include an antistatic agent.

본 발명의 편광판은 점착층에 대전방지제를 포함할 수도 있지만 점착층에 대전방지제를 포함하지 않더라도 편광판용 접착층에 의해 대전방지성을 구현할 수 있다. 상기 "대전방지제"는 당업자에게 알려진 통상의 대전방지제를 포함하고, 예를 들면 ITO, 이온성 액체, 금속염 중 1종 이상을 의미할 수 있지만, 이에 제한되지 않는다.Although the polarizing plate of the present invention may include an antistatic agent in the adhesive layer, antistatic properties may be implemented by the adhesive layer for the polarizing plate even if the adhesive layer does not contain an antistatic agent. The "antistatic agent" includes conventional antistatic agents known to those skilled in the art, and may mean, for example, one or more of ITO, ionic liquids, and metal salts, but is not limited thereto.

본 발명의 일 실시예에 따른 광학 표시 장치는 본 발명의 실시예들에 따른 편광판을 포함할 수 있다. The optical display device according to an embodiment of the present invention may include the polarizing plate according to the embodiments of the present invention.

일 구체예에서, 광학 표시 장치는 액정 표시 장치를 포함할 수 있다. In one embodiment, the optical display device may include a liquid crystal display device.

일 구체예에서, 본 발명의 편광판은 액정 표시 장치 중 시인측 편광판으로 사용될 수 있다.In one embodiment, the polarizing plate of the present invention may be used as a viewing-side polarizing plate in a liquid crystal display.

도 2를 참조하면, 액정 표시 장치는 인 셀형 액정 패널(100), 인 셀형 액정 패널(100)의 광 출사면에 배치된 제1편광판(200), 인 셀형 액정 패널(100)의 광 입사면에 배치된 제2편광판(300)을 포함하고, 제1편광판은 본 발명의 편광판을 포함할 수 있다.Referring to FIG. 2 , the liquid crystal display includes an in-cell liquid crystal panel 100 , a first polarizing plate 200 disposed on a light exit surface of the in-cell liquid crystal panel 100 , and a light incident surface of the in-cell liquid crystal panel 100 . and a second polarizing plate 300 disposed on the , and the first polarizing plate may include the polarizing plate of the present invention.

인 셀형 액정 패널(100)은 제1기판(110), 제1기판(110)과 대향하는 제2기판(120)을 구비하고, 제1기판(110)과 제2기판(120) 사이에는 액정층(130)을 구비하고, 제1기판(110)과 액정층(130) 사이에는 터치 센서부(140)를 구비하고, 액정층(130)과 제2기판(120) 사이에는 구동 전극 및 센서부(150)를 구비할 수 있다.The in-cell liquid crystal panel 100 includes a first substrate 110 and a second substrate 120 facing the first substrate 110 , and a liquid crystal panel is disposed between the first substrate 110 and the second substrate 120 . A layer 130 is provided, a touch sensor unit 140 is provided between the first substrate 110 and the liquid crystal layer 130 , and a driving electrode and a sensor are provided between the liquid crystal layer 130 and the second substrate 120 . A unit 150 may be provided.

제2편광판(300)은 당업자에게 알려진 통상의 편광판을 포함할 수 있다.The second polarizing plate 300 may include a conventional polarizing plate known to those skilled in the art.

이하, 본 발명의 실시예를 통해 본 발명의 구성 및 작용을 더욱 상세히 설명하기로 한다. 다만, 하기 실시예는 본 발명의 이해를 돕기 위한 것으로, 본 발명의 범위가 하기 실시예에 한정되지는 않는다.Hereinafter, the configuration and operation of the present invention will be described in more detail through embodiments of the present invention. However, the following examples are provided to aid understanding of the present invention, and the scope of the present invention is not limited thereto.

실시예Example 1 One

폴리비닐알콜계 필름(일본합성社, 검화도:99.5몰%, 중합도:2000, 두께:60㎛)을 0.3% 요오드 수용액에 침지시켜 염착시켰다. 연신비 5.0배로 1축 연신시켰다. 연신된 폴리비닐알콜계 필름을 3%의 붕산 수용액과 2% 요오드화 칼륨 수용액에 침지시켜 색상 보정을 하였다. 50℃에서 4분 동안 건조시켜 편광자(두께:22㎛)를 제조하였다.A polyvinyl alcohol-based film (Nippon Synthetic Company, saponification degree: 99.5 mol%, polymerization degree: 2000, thickness: 60 µm) was immersed in 0.3% iodine aqueous solution and dyed. It was uniaxially stretched at a draw ratio of 5.0 times. The stretched polyvinyl alcohol-based film was immersed in 3% boric acid aqueous solution and 2% potassium iodide aqueous solution for color correction. A polarizer (thickness: 22 μm) was prepared by drying at 50° C. for 4 minutes.

상기 편광자의 일면에 편광판용 접착제를 도포하고 제1 트리아세틸셀룰로스 필름(두께: 25㎛, Fuji Film社, 필름 일면에 하드코팅층이 형성됨)을 적층시키고, 편광자의 다른 일면에 편광판용 접착제를 도포하고 제2 트리아세틸셀룰로스 필름(두께: 20㎛, Konica社, 위상차가 없는 Zero TAC)을 적층시키고, 50℃ 건조 오븐에서 1분, 85℃ 건조 오븐에서 2분 동안 열경화시켜, 제1트리아세틸셀룰로스 필름 - 편광판용 접착층(두께:100nm) - 편광자 - 편광판용 접착층(두께:100nm) - 제2트리아세틸셀룰로스 필름이 순차적으로 적층된 편광판을 제조하였다.An adhesive for a polarizing plate is applied to one side of the polarizer, a first triacetyl cellulose film (thickness: 25 μm, Fuji Film, a hard coating layer is formed on one side of the film) is laminated, and an adhesive for a polarizing plate is applied to the other side of the polarizer, A second triacetyl cellulose film (thickness: 20 μm, Konica, Zero TAC without phase difference) was laminated and heat-cured for 1 minute in a drying oven at 50° C. and 2 minutes in a drying oven at 85° C., and the first triacetyl cellulose Film - Adhesive layer for polarizing plate (thickness: 100 nm) - Polarizer - Adhesive layer for polarizing plate (thickness: 100 nm) - A polarizing plate in which a second triacetyl cellulose film is sequentially laminated was prepared.

제2 트리아세틸셀룰로스 필름 일면에 아크릴계 점착층과 이형 필름으로 구성되는 점착 시트를 합지하고 이형 필름을 박리하여 편광판을 제조하였다.A polarizing plate was prepared by laminating an adhesive sheet composed of an acrylic adhesive layer and a release film on one surface of the second triacetylcellulose film and peeling the release film.

상기 사용된 편광판용 접착제는 폴리비닐알코올계 수지(Z200, 평균 중합도: 1100, 검화도: 98.5몰%, 아세토아세틸기 변성도: 5몰%) 3중량부를 95℃의 물 100중량부에 넣고 60분 동안 교반하면서 녹였다. 상온에서 완전히 식힌 다음 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트) 함유 용액 eS-Chem(유효 성분 1.2중량%) 25중량부, 글리옥실산 염 용액 SPM-01(일본합성화학사, 유효 성분 10중량%, 용매는 물) 3중량부를 넣고 마그네틱 스터러로 교반하여 제조된 것이다. 하기 표 1에서는 폴리비닐알코올계 수지 100중량부에 대해 고형분 기준 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트), 글리옥실산 염의 함량(단위:중량부)을 나타내었다.The used adhesive for polarizing plate was added to 100 parts by weight of polyvinyl alcohol-based resin (Z200, average degree of polymerization: 1100, degree of saponification: 98.5 mol%, degree of acetoacetyl group modification: 5 mol%) in 100 parts by weight of water at 95 ° C. 60 Dissolve with stirring for minutes. After cooling completely at room temperature, poly(ethylenedioxythiophene) poly(styrenesulfonate) containing solution eS-Chem (1.2% by weight of active ingredient) 25 parts by weight, glyoxylic acid salt solution SPM-01 (Nippon Synthetic Chemical Company, active ingredient 10) Weight %, solvent is water) 3 parts by weight was prepared by stirring with a magnetic stirrer. Table 1 below shows the contents (unit: parts by weight) of poly(ethylenedioxythiophene) poly(styrenesulfonate) and glyoxylic acid salt based on solid content based on 100 parts by weight of the polyvinyl alcohol-based resin.

상기 점착 시트는 다음과 같이 제조하였다: 냉각관, 질소 도입관, 온도계 및 교반 장치를 구비한 반응 용기에 부틸아크릴레이트 100중량부, 아크릴산 2중량부, 2-히드록시에틸아크릴레이트 0.2중량부, 2,2-아조비스이소부티로니트릴 0.3중량부를 아세트산 에틸과 함께 첨가하여 용액을 제조하였다. 용액을 질소 가스 분위기 하에서 교반하고, 60℃에서 6시간 동안 반응시켜 중량평균분자량 170만의 아크릴계 중합체를 함유하는 용액을 제조하였다. 얻은 아크릴계 중합체 용액에 메틸에틸케톤을 첨가하여 고형분 농도 20%의 아크릴계 중합체 용액을 얻었다. 아크릴계 중합체 용액의 고형분 100중량부에 대하여 이소시아네이트기를 갖는 경화제 L-45(Soken사) 0.3중량부, 실란 커플링제로 KBM-403(신예츠사) 0.05중량부를 투입하여 점착층용 용액을 제조하였다. 이형 필름으로서 박리 처리한 폴리에틸렌테레프탈레이트 필름(두께 38㎛)에 상기 점착층용 용액을 건조 후의 두께가 20㎛가 되도록 도포하고 건조시켜 이형 필름에 점착층이 형성된 점착 시트를 제조하였다. 점착층은 대전 방지제를 포함하지 않는다.The pressure-sensitive adhesive sheet was prepared as follows: 100 parts by weight of butyl acrylate, 2 parts by weight of acrylic acid, 0.2 parts by weight of 2-hydroxyethyl acrylate in a reaction vessel equipped with a cooling tube, a nitrogen introduction tube, a thermometer and a stirring device; 0.3 parts by weight of 2,2-azobisisobutyronitrile was added together with ethyl acetate to prepare a solution. The solution was stirred under a nitrogen gas atmosphere and reacted at 60° C. for 6 hours to prepare a solution containing an acrylic polymer having a weight average molecular weight of 1.7 million. Methyl ethyl ketone was added to the obtained acrylic polymer solution to obtain an acrylic polymer solution having a solid content concentration of 20%. To 100 parts by weight of the solid content of the acrylic polymer solution, 0.3 parts by weight of a curing agent L-45 having an isocyanate group (Soken) and 0.05 parts by weight of KBM-403 (Shinyetsu) as a silane coupling agent were added to prepare a solution for an adhesive layer. As a release film, the adhesive layer solution was applied to a polyethylene terephthalate film (thickness 38 μm) subjected to peeling treatment to a thickness of 20 μm after drying, and dried to prepare an adhesive sheet having an adhesive layer formed on the release film. The adhesive layer does not contain an antistatic agent.

실시예Example 2 내지 2 to 실시예Example 4 4

실시예 1에서, 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트), 글리옥실산 염을 함량을 하기 표 1(단위:중량부)과 같이 변경한 것을 제외하고는 실시예 1과 동일한 방법으로 편광판을 제조하였다.In Example 1, in the same manner as in Example 1, except that the content of poly(ethylenedioxythiophene) poly(styrenesulfonate) and glyoxylic acid salt was changed as shown in Table 1 (unit: parts by weight) below. A polarizing plate was manufactured.

비교예comparative example 1 내지 1 to 비교예comparative example 4 4

실시예 1에서, 폴리비닐알코올계 수지 100중량부에 대해 고형분 기준으로 하기 표 1의 성분을 하기 표 1의 함량으로 포함하는 것을 제외하고는 실시예 1과 동일한 방법으로 편광판을 제조하였다. 하기 표 1은 폴리비닐알코올계 수지 100중량부에 대해 각각의 성분의 고형분 기준의 함량을 나타낸 것이다.In Example 1, a polarizing plate was manufactured in the same manner as in Example 1, except that the components of Table 1 below were included in the contents of Table 1 below based on the solid content based on 100 parts by weight of the polyvinyl alcohol-based resin. Table 1 below shows the content based on the solid content of each component with respect to 100 parts by weight of the polyvinyl alcohol-based resin.

비교예comparative example 5 5

폴리비닐알코올계 수지(Z200, 평균 중합도: 1100, 비누화도: 98.5몰%, 아세토아세틸기 변성도: 5몰%) 3중량부와 글리옥실산 염 용액 SPM-01(일본합성화학사, 유효 성분 10중량%, 용매는 물) 3중량부를 95℃의 물 100중량부에 넣고 60분 동안 교반하면서 녹여 편광판용 접착제를 제조하였다. 그리고 상기 제조한 편광판용 접착제를 사용해서 실시예 1과 동일한 방법으로 편광판을 제조하였다.3 parts by weight of polyvinyl alcohol-based resin (Z200, average degree of polymerization: 1100, degree of saponification: 98.5 mol%, degree of acetoacetyl group modification: 5 mol%) and glyoxylic acid salt solution SPM-01 (Japan Synthetic Chemicals, active ingredient 10) Weight %, solvent is water) 3 parts by weight of water at 95 ℃ put in 100 parts by weight and dissolved while stirring for 60 minutes to prepare an adhesive for a polarizing plate. And a polarizing plate was manufactured in the same manner as in Example 1 using the prepared adhesive for polarizing plate.

편광판의 외부 즉 제2트리아세틸셀룰로스 필름 일면에 카르복실산기를 갖는 폴리우레탄 아크릴레이트(중량평균분자량: 4,000g/mol) 용액(고형분 25%)과 폴리(에틸렌디옥시티오펜)폴리(스티렌술포네이트)(고형분 1.2%)과 2관능 아지리딘계 경화제: N,N'-(methylenedi-pphenylene) bis(aziridine-1-carboxamide)(Sthal사, HDU-P25, 고형분:25중량%, Blocked Isocyanate Aziridine)를 유효 성분 기준으로 90:10:0.01을 혼합한 외부 도전층용 용액을 코팅하고 80℃에서 2분 동안 건조시켜 편광판의 제2트리아세틸셀룰로스 필름 일면에 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)를 포함하는 외부 도전층(두께: 100nm)을 형성하였다.A solution of polyurethane acrylate (weight average molecular weight: 4,000 g/mol) having a carboxylic acid group (weight average molecular weight: 4,000 g/mol) (solid content 25%) and poly(ethylenedioxythiophene)poly(styrenesulfonate) on the outside of the polarizing plate, that is, on one surface of the second triacetylcellulose film ) (solid content 1.2%) and a bifunctional aziridine curing agent: N,N'-(methylenedi-pphenylene) bis(aziridine-1-carboxamide) (Sthal, HDU-P25, solid content: 25 wt%, Blocked Isocyanate Aziridine) Poly(ethylenedioxythiophene) poly(styrenesulfonate) on one side of the second triacetylcellulose film of a polarizing plate by coating the solution for the external conductive layer mixed with 90:10:0.01 based on the active ingredient and drying it at 80°C for 2 minutes An external conductive layer (thickness: 100 nm) containing

실시예와 비교예에서 사용한 편광판용 접착제의 구성 및 외부 도전층의 형성 유무를 하기 표 1과 같다.Table 1 below shows the composition of the adhesive for a polarizing plate used in Examples and Comparative Examples and whether or not an external conductive layer is formed.

AA BB CC DD EE FF GG 실시예1Example 1 2020 1010 00 00 00 00 ×× 실시예2Example 2 2020 3030 00 00 00 00 ×× 실시예3Example 3 2020 5050 00 00 00 00 ×× 실시예4Example 4 1010 1010 00 00 00 00 ×× 비교예1Comparative Example 1 2020 00 1010 00 00 00 ×× 비교예2Comparative Example 2 2020 00 00 1010 00 00 ×× 비교예3Comparative Example 3 00 1010 00 00 55 00 ×× 비교예4Comparative Example 4 00 1010 00 00 00 55 ×× 비교예5Comparative Example 5 00 1010 00 00 00 00

*상기 표 1에서 *In Table 1 above

A: 폴리(3,4-에틸렌디옥시티오펜) 폴리(스티렌술포네이트)A: poly(3,4-ethylenedioxythiophene) poly(styrenesulfonate)

B: 글리옥실산 나트륨B: sodium glyoxylate

C: 지르코늄 화합물(제일희원소화학공업, Zircosol ZN, 유효성분 36중량%, 용매는 물)C: Zirconium compound (Cheil Kiecho Chemical Industry, Zircosol ZN, active ingredient 36% by weight, solvent is water)

D: 폴리에틸렌이민(일본촉매, SP018, 유효성분 98중량%)D: polyethyleneimine (Japanese catalyst, SP018, active ingredient 98% by weight)

E: ITO(인듐 틴 옥사이드, 수분산액, 나노맥, NMIS-150, 평균입경 50nm, 유효성분: 15중량%, 용매는 에탄올)E: ITO (indium tin oxide, aqueous dispersion, nanomac, NMIS-150, average particle diameter 50nm, active ingredient: 15% by weight, solvent is ethanol)

F: 이온성 액체(CYASTAT SN, 니드필)F: ionic liquid (CYASTAT SN, need fill)

G: 폴리(에틸렌디옥시티오펜)폴리(스티렌술포네이트)를 포함하는 외부 도전층G: outer conductive layer comprising poly(ethylenedioxythiophene)poly(styrenesulfonate)

실시예와 비교예의 편광판에 대해 하기 물성을 평가하고 그 결과를 하기 표 2에 나타내었다.The following physical properties were evaluated for the polarizing plates of Examples and Comparative Examples, and the results are shown in Table 2 below.

(1)표면 저항 1(단위:Ω/□): 프라이머 처리된 폴리에스터 필름(PET, TA044, Toyobo, 두께: 80㎛)에 실시예와 비교예 1 내지 비교예 4에서 사용한 편광판용 접착제를 적당량 도포하여 코팅층을 형성하였다. 상기 코팅층 상에 검화 처리되지 않은 트리아세틸셀룰로스 필름(Zero TAC, KC2CT1W, 코니카, 두께: 20㎛)을 덮고 롤러를 이용하여 합지하였다. 그리고, 50℃ 건조 오븐에 1분, 85℃ 건조 오븐에 2분 동안 넣고 용매를 건조시킨 후 검화 처리되지 않은 트리아세틸셀룰로스 필름을 제외하여 접착제층 면이 노출시켜 시편을 제조하였다. 상기 시편 중 노출시킨 접착제층 면에 표면 저항 측정기(HT-450, 미츠비시 케미칼사)를 이용하여 25℃에서 10V의 전압으로 10초 동안 측정한 후 표시된 면저항 수치를 기록하였다.(1) Surface resistance 1 (unit: Ω / □): an appropriate amount of the adhesive for polarizing plates used in Examples and Comparative Examples 1 to 4 on the primer-treated polyester film (PET, TA044, Toyobo, thickness: 80 μm) was applied to form a coating layer. A triacetylcellulose film (Zero TAC, KC2CT1W, Konica, thickness: 20 μm) that was not saponified was covered on the coating layer and laminated using a roller. Then, the sample was prepared by putting the solvent in a drying oven at 50° C. for 1 minute and drying oven at 85° C. for 2 minutes, and then exposing the adhesive layer side except for the triacetyl cellulose film that was not saponified. The exposed surface of the adhesive layer of the specimen was measured for 10 seconds at 25° C. with a voltage of 10V using a surface resistance meter (HT-450, Mitsubishi Chemical Co., Ltd.), and then the displayed sheet resistance value was recorded.

비교예 5의 경우, 검화 처리되지 않은 트리아세틸셀룰로스 필름(Zero TAC, 제품명, 제조사, 두께: 20㎛)의 일면에 외부 도전층용 용액을 코팅하고 80℃ 건조 오븐에서 2분 동안 건조시켜 두께 100nm의 외부 도전층을 형성함으로써 시편을 제조하였다. 외부 도전층에 대해 상기와 동일한 방법으로 면저항을 측정하였다.In the case of Comparative Example 5, a solution for an external conductive layer was coated on one side of a triacetylcellulose film (Zero TAC, product name, manufacturer, thickness: 20 μm) not treated with saponification, and dried in a drying oven at 80° C. for 2 minutes to obtain a thickness of 100 nm. A specimen was prepared by forming an outer conductive layer. The sheet resistance of the outer conductive layer was measured in the same manner as above.

(2)표면 저항 2(단위:Ω/□): (1)에서 제조된 시편을 85℃, 85% 상대습도에서 250시간 동안 방치한 후 (1)과 동일한 방법으로 면저항을 측정하였다.(2) Surface resistance 2 (unit: Ω/□): After leaving the specimen prepared in (1) at 85°C and 85% relative humidity for 250 hours, the sheet resistance was measured in the same manner as in (1).

(3)ESD Gun: 실시예와 비교예의 편광판을 길이 x 폭 (10cm x 7cm)으로 절단하여 시편을 제조하고 제조한 시편 중 제1트리아세틸셀룰로스 필름 면에 정전기 방전총 (Electrostatic Discharge Gun)을 인가 전압 10kV에서 발사하여 정전기에 의해 밝아진 부위가 재탈색되는 시간을 측정하였다. 측정 시간이 짧을수록 전기적 충격에도 신뢰성이 우수한 편광판임을 의미한다.(3) ESD Gun: A specimen was prepared by cutting the polarizing plates of Examples and Comparative Examples in length x width (10 cm x 7 cm), and an electrostatic discharge gun was applied to the surface of the first triacetyl cellulose film among the prepared specimens. After firing at a voltage of 10 kV, the time for re-discoloration of the area brightened by static electricity was measured. The shorter the measurement time, the more reliable the polarizing plate even against electric shock.

◎ : 2초 미만◎: less than 2 seconds

○ : 2초 이상 5초 미만○: 2 seconds or more and less than 5 seconds

△ : 5초 이상 10초 미만△: 5 seconds or more and less than 10 seconds

Х : 10초 이상Х : more than 10 seconds

(4)터치 성능 1: 삼성 전자의 인셀 액정 패널이 적용된 Galaxy On 7 모델의 액정 패널에 실시예와 비교예에서 제조한 편광판을 부착시켰다. 편광판에서 터치시 터치 유무를 확인하였다.(4) Touch performance 1: The polarizing plates prepared in Examples and Comparative Examples were attached to the liquid crystal panel of the Galaxy On 7 model to which Samsung Electronics' in-cell liquid crystal panel was applied. It was checked whether there was a touch when the polarizing plate was touched.

(5)터치 성능 2: 삼성 전자의 인셀 액정 패널이 적용된 Galaxy On 7 모델의 액정 패널에 실시예와 비교예에서 제조한 편광판을 부착시키고 85℃, 85% 상대습도의 챔버에서 250시간 경과 후 편광판에서 터치시 터치 유무를 확인하였다. (5) Touch performance 2: After attaching the polarizing plate prepared in Examples and Comparative Examples to the liquid crystal panel of the Galaxy On 7 model to which Samsung Electronics’ in-cell liquid crystal panel is applied, the polarizing plate was placed in a chamber at 85° C. and 85% relative humidity for 250 hours. In touch, it was checked whether there was a touch.

(6)내수성:실시예와 비교예에서 제조한 편광판을 길이 x 폭 50mm x 50mm로 절단시킨 시편을 유리판에 부착시키고 44℃의 물에 완전히 침수시킨 다음 12시간 동안 방치하였다. 편광판에서 트리아세틸셀룰로스 필름이 편광자로부터 박리되는 최대 길이를 측정하였다. 최대 길이를 가지고 하기 기준으로 평가하였다.(6) Water resistance: A specimen obtained by cutting the polarizing plates prepared in Examples and Comparative Examples into length x width 50 mm x 50 mm was attached to a glass plate, completely immersed in water at 44 ° C., and left for 12 hours. The maximum length at which the triacetylcellulose film is peeled from the polarizer in the polarizing plate was measured. The maximum length was evaluated according to the following criteria.

◎ : 0mm 이상 0.1mm 미만◎: 0mm or more and less than 0.1mm

○ : 0.1mm 이상 1mm 미만○: 0.1mm or more and less than 1mm

△ : 1mm 이상 5mm 미만△: 1 mm or more and less than 5 mm

Х : 5mm 이상Х: 5mm or more

표면 저항 1surface resistance 1 표면 저항 2surface resistance 2 식 1Equation 1 ESD GunESD Gun 터치 성능 1touch performance 1 터치 성능 2touch performance 2 내수성water resistance 실시예1Example 1 3.9x109 3.9x10 9 2.8x109 2.8x10 9 0.7180.718 OKOK OKOK 실시예2Example 2 4.2x109 4.2x10 9 3.4x109 3.4x10 9 0.8100.810 OKOK OKOK 실시예3Example 3 4.8x109 4.8x10 9 4.6x109 4.6x10 9 0.9580.958 OKOK OKOK 실시예4Example 4 1.2x1010 1.2x10 10 9.6x109 9.6x10 9 0.80.8 OKOK OKOK 비교예1Comparative Example 1 OverOver OverOver -- XX NGNG NGNG XX 비교예2Comparative Example 2 OverOver OverOver -- XX NGNG NGNG XX 비교예3Comparative Example 3 5.5x1011 5.5x10 11 9.3x1011 9.3x10 11 1.6911.691 NGNG NGNG 비교예4Comparative Example 4 OverOver OverOver -- XX NGNG NGNG 비교예5Comparative Example 5 8.6x107 8.6x10 7 6.8x106 6.8x10 6 0.0790.079 OKOK NGNG

상기 표 2에서 나타난 바와 같이, 본 발명의 편광판은 고온 고습에서 장기간 방치하기 전 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이고 편광판을 고온 고습에서 장기간 방치 후 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이었으며, 내부에 터치 센서를 포함하는 액정 패널(인 셀형 액정 패널)에 적층하였을 때 상온 및 고온 고습에서도 터치 성능과 터치 성능 감도가 우수하고 정전기 충격 하에서 편광자가 재탈색되는 시간이 짧아서 신뢰성이 우수하였다. 또한, 본 발명의 편광판은 편광자와 보호층 간의 접착력, 내구성 및 내수성이 우수하였다.As shown in Table 2 above, in the polarizing plate of the present invention, the surface resistance of the adhesive layer for the polarizing plate is 1 x 10 8 Ω/□ to 1 x 10 12 Ω/□ before being left for a long time at high temperature and high humidity, and the polarizing plate is left at high temperature and high humidity for a long time. The surface resistance of the adhesive layer for the post-polarizing plate was 1 x 10 8 Ω/□ to 1 × 10 12 Ω/□, and when laminated on a liquid crystal panel (in-cell type liquid crystal panel) including a touch sensor inside, touch at room temperature, high temperature and high humidity The performance and touch performance were excellent, and the time for the polarizer to re-discolor under electrostatic shock was short, so the reliability was excellent. In addition, the polarizing plate of the present invention was excellent in adhesion between the polarizer and the protective layer, durability, and water resistance.

반면에, 비교예 3은 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트) 대신에 ITO를 편광판용 접착층에 포함하는 경우 편광판용 접착층의 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이더라도 터치 성능 및 터치 성능 감도가 좋지 않았으며 상기 신뢰성이 좋지 않았다. 또한, PEDOT:PSS를 외부 도전층에 포함하는 비교예 5는 본 발명의 표면 저항을 만족하지 못하였으며 고온 고습에서 장기간 방치한 후 터치 성능도 좋지 않았다.On the other hand, in Comparative Example 3, when ITO is included in the adhesive layer for a polarizing plate instead of poly(ethylenedioxythiophene) poly(styrenesulfonate), the surface resistance of the adhesive layer for a polarizing plate is 1 x 10 8 Ω/□ to 1 x 10 12 Even with Ω/□, the touch performance and touch performance sensitivity were not good, and the reliability was not good. In addition, Comparative Example 5 including PEDOT:PSS in the external conductive layer did not satisfy the surface resistance of the present invention, and the touch performance was also poor after being left for a long time at high temperature and high humidity.

본 발명의 단순한 변형 내지 변경은 이 분야의 통상의 지식을 가진 자에 의하여 용이하게 실시될 수 있으며, 이러한 변형이나 변경은 모두 본 발명의 영역에 포함되는 것으로 볼 수 있다.Simple modifications or changes of the present invention can be easily carried out by those of ordinary skill in the art, and all such modifications or changes can be considered to be included in the scope of the present invention.

Claims (15)

편광자; 및 상기 편광자의 적어도 일면에 순차적으로 형성된 편광판용 접착층과 보호층을 포함하는 편광판으로서,
상기 편광판용 접착층은 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)를 포함하고,
상기 편광판용 접착층은 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS), 폴리비닐알코올계 수지 및 글리옥실산 염을 포함하는 편광판용 접착제 조성물로 형성되고,
상기 편광판용 접착층은 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□이고,
상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치한 후 상기 편광판용 접착층은 표면 저항이 1 x 108Ω/□ 내지 1 x 1012Ω/□인 것인, 편광판.
polarizer; And a polarizing plate comprising an adhesive layer and a protective layer for a polarizing plate sequentially formed on at least one surface of the polarizer,
The adhesive layer for the polarizing plate includes poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS),
The adhesive layer for a polarizing plate is formed of an adhesive composition for a polarizing plate comprising the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS), polyvinyl alcohol-based resin, and glyoxylic acid salt,
The adhesive layer for the polarizing plate has a surface resistance of 1 x 10 8 Ω/□ to 1×10 12 Ω/□,
After leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours, the adhesive layer for the polarizing plate has a surface resistance of 1×10 8 Ω/□ to 1×10 12 Ω/□, a polarizing plate.
삭제delete 제1항에 있어서, 상기 편광판은 하기 식 1에 따른 표면 저항의 비가 0 초과 1 이하인 것인, 편광판:
[식 1]
표면 저항의 비 = SR2/SR1
(상기 식 1에서,
SR1은 상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치하기 전의 편광판용 접착층의 표면 저항(단위:Ω/□)
SR2는 상기 편광판을 85℃, 85% 상대습도에서 250시간 동안 방치한 후의 전의 편광판용 접착층의 표면 저항(단위:Ω/□)).
The polarizing plate according to claim 1, wherein the polarizing plate has a surface resistance ratio of more than 0 to 1 or less according to Equation 1 below:
[Equation 1]
Ratio of surface resistance = SR2/SR1
(In Equation 1 above,
SR1 is the surface resistance of the adhesive layer for a polarizing plate before leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours (unit: Ω/□)
SR2 is the surface resistance (unit: Ω/□) of the adhesive layer for the polarizing plate before leaving the polarizing plate at 85° C. and 85% relative humidity for 250 hours.
제1항에 있어서, 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)은 상기 편광판용 접착층 중 1중량% 내지 50중량%로 포함되는 것인, 편광판.
The polarizing plate according to claim 1, wherein the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) is included in an amount of 1 wt% to 50 wt% of the adhesive layer for the polarizing plate.
삭제delete 제1항에 있어서, 상기 폴리비닐알코올계 수지 100중량부에 대해, 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)는 5중량부 내지 30중량부로 포함되고, 상기 글리옥실산 염은 1중량부 내지 50중량부로 포함되는 것인, 편광판.
According to claim 1, With respect to 100 parts by weight of the polyvinyl alcohol-based resin, the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) is included in an amount of 5 to 30 parts by weight, and the gly Oxylic acid salt is included in 1 part by weight to 50 parts by weight, the polarizing plate.
제1항에 있어서, 상기 글리옥실산 염은 글리옥실산 리튬, 글리옥실산 나트륨, 글리옥실산 칼륨, 글리옥실산 마그네슘, 글리옥실산 칼슘, 글리옥실산 스트론튬, 글리옥실산 바륨 중 1종 이상을 포함하는 것인, 편광판.
According to claim 1, wherein the glyoxylate salt is at least one of lithium glyoxylate, sodium glyoxylate, potassium glyoxylate, magnesium glyoxylate, calcium glyoxylate, strontium glyoxylate, and barium glyoxylate. A polarizing plate comprising a.
폴리비닐알코올계 수지, 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS) 및 글리옥실산 염을 포함하는 편광판용 접착제 조성물로서,
상기 편광판용 접착제 조성물은 상기 편광판용 접착제 조성물의 경화물에 대해 25℃에서 측정한 표면 저항 및 85℃, 85% 상대습도에서 250시간 동안 방치한 후 25℃에서 측정한 표면 저항이 각각 1 x 108 내지 1 x 1012(Ω/□)인 것인, 편광판용 접착제 조성물.
An adhesive composition for a polarizing plate comprising a polyvinyl alcohol-based resin, poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS), and glyoxylic acid salt,
The adhesive composition for a polarizing plate had a surface resistance measured at 25° C. for the cured product of the polarizing plate adhesive composition, and a surface resistance measured at 25° C. after standing at 85° C. and 85% relative humidity for 250 hours, respectively, of 1 x 10 8 to 1 x 10 12 (Ω / □) will, the adhesive composition for a polarizing plate.
제8항에 있어서, 상기 폴리비닐알코올계 수지 100중량부에 대해, 상기 폴리(에틸렌디옥시티오펜) 폴리(스티렌술포네이트)(PEDOT:PSS)는 5중량부 내지 30중량부로 포함되고, 상기 글리옥실산 염은 1중량부 내지 50중량부로 포함되는 것인, 편광판용 접착제 조성물.
According to claim 8, With respect to 100 parts by weight of the polyvinyl alcohol-based resin, the poly(ethylenedioxythiophene) poly(styrenesulfonate) (PEDOT:PSS) is included in an amount of 5 to 30 parts by weight, and the gly The oxylic acid salt is included in an amount of 1 part by weight to 50 parts by weight, the adhesive composition for a polarizing plate.
제8항에 있어서, 상기 글리옥실산 염은 글리옥실산 리튬, 글리옥실산 나트륨, 글리옥실산 칼륨, 글리옥실산 마그네슘, 글리옥실산 칼슘, 글리옥실산 스트론튬, 글리옥실산 바륨 중 1종 이상을 포함하는 것인, 편광판용 접착제 조성물.
The method of claim 8, wherein the glyoxylate salt is at least one of lithium glyoxylate, sodium glyoxylate, potassium glyoxylate, magnesium glyoxylate, calcium glyoxylate, strontium glyoxylate, and barium glyoxylate. A polarizing plate adhesive composition comprising a.
제8항에 있어서, 상기 폴리비닐알코올계 수지는 아세토아세틸기 변성도 1몰% 내지 30몰%인 폴리비닐알코올계 수지를 포함하는 것인, 편광판용 접착제 조성물.
The adhesive composition for a polarizing plate according to claim 8, wherein the polyvinyl alcohol-based resin comprises a polyvinyl alcohol-based resin having a degree of acetoacetyl group modification of 1 mol% to 30 mol%.
삭제delete 제1항, 제3항, 제4항, 제6항, 제7항 중 어느 한 항의 편광판을 포함하는 광학 표시 장치.
An optical display device comprising the polarizing plate of any one of claims 1, 3, 4, 6, and 7.
제13항에 있어서, 상기 광학 표시 장치는 인 셀형 액정 패널, 상기 인 셀형 액정 패널의 광 출사면에 배치된 제1편광판, 상기 인 셀형 액정 패널의 광 입사면에 배치된 제2편광판을 포함하고, 상기 제1편광판은 상기 편광판을 포함하는 것인, 광학 표시 장치.
14. The method of claim 13, wherein the optical display device comprises an in-cell liquid crystal panel, a first polarizing plate disposed on a light exit surface of the in-cell liquid crystal panel, and a second polarizing plate disposed on a light incident surface of the in-cell liquid crystal panel, , The first polarizing plate will include the polarizing plate, an optical display device.
제14항에 있어서, 상기 인 셀형 액정 패널은 제1기판, 상기 제1기판과 대향하는 제2기판을 구비하고, 상기 제1기판과 상기 제2기판 사이에 액정층과 터치 센서부를 구비하는 것인, 광학 표시 장치.

15. The method of claim 14, wherein the in-cell liquid crystal panel comprises a first substrate and a second substrate facing the first substrate, and a liquid crystal layer and a touch sensor unit between the first substrate and the second substrate Phosphorus, an optical display device.

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